Zhang Yao, Li Kexin, Ru Yibo, Ma Yue
School of Health Science and Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China.
Microorganisms. 2025 Jan 6;13(1):97. doi: 10.3390/microorganisms13010097.
Towels with complex woven structures are susceptible to biofilm formation during daily use. The composition of biofilms formed on towels used under real-life conditions has yet to be studied. Thus, we investigated the color changes, structural integrity, and biofilm development on towels used continuously for 10 weeks by 12 volunteers in specific kitchen environments. Apparent biofilms composed of bacteria and extracellular polymeric substances (EPSs) were found on all used towels. The bacteria concentrations ranged from 4 to 7 log CFU/g. Proteins were the most abundant EPS, followed by polysaccharides and eDNA. A high-throughput sequencing method was employed to investigate the bacterial diversity on the towels. The predominant bacterial genera differed from towel to towel. , , , , and are genera of relatively high abundance that may originate from the human body and foods. In addition, correlations among environmental factors, major bacterial genera, physical properties, and biofilm formation of the towels were analyzed, which could provide a scientific reference for maintaining towel hygiene.
具有复杂编织结构的毛巾在日常使用过程中容易形成生物膜。在实际生活条件下使用的毛巾上形成的生物膜的组成尚未得到研究。因此,我们调查了12名志愿者在特定厨房环境中连续使用10周的毛巾的颜色变化、结构完整性和生物膜形成情况。在所有使用过的毛巾上都发现了由细菌和细胞外聚合物(EPSs)组成的明显生物膜。细菌浓度范围为4至7 log CFU/g。蛋白质是最丰富的EPS,其次是多糖和胞外DNA。采用高通量测序方法研究毛巾上的细菌多样性。不同毛巾上占主导地位的细菌属各不相同。 、 、 、 和 是相对丰度较高的属,可能源自人体和食物。此外,还分析了环境因素、主要细菌属、物理性质和毛巾生物膜形成之间的相关性,这可为保持毛巾卫生提供科学参考。